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63. Protein Dysregulation in Neurodegenerative Disorders (with Dr. Estella Newcombe)

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Inhalt bereitgestellt von Neuroverse. Alle Podcast-Inhalte, einschließlich Episoden, Grafiken und Podcast-Beschreibungen, werden direkt von Neuroverse oder seinem Podcast-Plattformpartner hochgeladen und bereitgestellt. Wenn Sie glauben, dass jemand Ihr urheberrechtlich geschütztes Werk ohne Ihre Erlaubnis nutzt, können Sie dem hier beschriebenen Verfahren folgen https://de.player.fm/legal.

In this episode, we are joined by a special guest, Dr. Estella Newcombe, to discuss protein dysregulation in neurodegenerative disorders.

Estella is currently a Marie Sklodowska-Curie Fellow at the University of Copenhagen in the structural biology and NMR laboratory, researching intrinsically disordered proteins in the context of neurodegenerative disorders. Estella holds a Bachelor’s degree in Biotechnology and Chemistry from the University of Queensland and a PhD in Biochemistry and Molecular Biology from the University of Melbourne, where she studied the interactions and structures of proteins in Huntington’s disease. She subsequently worked as a postdoctoral fellow at the Queensland Brain Institute studying the structures of intrinsically disordered proteins. Based on her wide range of experience in the fields of structural protein biology and neuroscience, in this episode we discuss the value of studying human neurodegenerative disorders at the level of protein-protein interactions. We cover what intrinsically disordered proteins are, the relevance of structure-function relationships, and how environmental factors influence protein dysfunction in neurodegeneration.

---

We hope you enjoy the episode! Please feel free to share with your friends and family, it means a lot to us🤍

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Manage episode 384111454 series 3412534
Inhalt bereitgestellt von Neuroverse. Alle Podcast-Inhalte, einschließlich Episoden, Grafiken und Podcast-Beschreibungen, werden direkt von Neuroverse oder seinem Podcast-Plattformpartner hochgeladen und bereitgestellt. Wenn Sie glauben, dass jemand Ihr urheberrechtlich geschütztes Werk ohne Ihre Erlaubnis nutzt, können Sie dem hier beschriebenen Verfahren folgen https://de.player.fm/legal.

In this episode, we are joined by a special guest, Dr. Estella Newcombe, to discuss protein dysregulation in neurodegenerative disorders.

Estella is currently a Marie Sklodowska-Curie Fellow at the University of Copenhagen in the structural biology and NMR laboratory, researching intrinsically disordered proteins in the context of neurodegenerative disorders. Estella holds a Bachelor’s degree in Biotechnology and Chemistry from the University of Queensland and a PhD in Biochemistry and Molecular Biology from the University of Melbourne, where she studied the interactions and structures of proteins in Huntington’s disease. She subsequently worked as a postdoctoral fellow at the Queensland Brain Institute studying the structures of intrinsically disordered proteins. Based on her wide range of experience in the fields of structural protein biology and neuroscience, in this episode we discuss the value of studying human neurodegenerative disorders at the level of protein-protein interactions. We cover what intrinsically disordered proteins are, the relevance of structure-function relationships, and how environmental factors influence protein dysfunction in neurodegeneration.

---

We hope you enjoy the episode! Please feel free to share with your friends and family, it means a lot to us🤍

Neuroverse Website

⁠⁠⁠⁠https://neuroversepod.com⁠⁠⁠⁠

Podcast directory

⁠⁠⁠⁠⁠https://anchor.fm/neuroverse9⁠⁠⁠⁠⁠

Support us!

⁠⁠⁠⁠⁠https://ko-fi.com/neuroverse⁠⁠⁠⁠⁠

Twitter: @neuroverse_pod

⁠⁠⁠⁠https://twitter.com/neuroverse_pod?s=21&t=KvAEuwGNKFQ9IPKlL7NTEg⁠⁠⁠⁠

Instagram: @Neuroverse_pod

⁠⁠⁠⁠https://instagram.com/neuroverse_pod?igshid=YmMyMTA2M2Y=⁠⁠⁠⁠

Help us improve our podcast by giving us some feedback!

⁠⁠⁠⁠https://forms.gle/PuEMC1BCWXdAqCRQA⁠

--- Send in a voice message: https://podcasters.spotify.com/pod/show/neuroverse9/message
  continue reading

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